Numerical Evaluation of Wind Flow over Complex Terrain: Review

Author:

Bitsuamlak G. T.1,Stathopoulos T.2,Bédard C.3

Affiliation:

1. Graduate Student, Centre for Building Studies, Dept. of Building, Civil and Environmental Engineering, Concordia Univ., 1257 Guy St., 341 Montreal PQ, Canada, H3H 1H5. E-mail:gtsegaye@cbs-engr.concordia.ca

2. Professor and Associate Dean Graduate Studies, Centre for Building Studies, Dept. of Building, Civil and Environmental Engineering, Concordia Univ., 1257 Guy St., 341 Montreal PQ, Canada, H3H 1H5. E-mail:statho@cbs-engr.concordia.ca

3. Professor and Dean of Research and Technology Transfer, École de technologie supérieure, 1100 Notre-Dame W. Montreal PQ, Canada, H3C 1K3. E-mail: claude.bedard@etsmtl.ca

Publisher

American Society of Civil Engineers (ASCE)

Subject

Mechanical Engineering,Aerospace Engineering,General Materials Science,Civil and Structural Engineering

Reference32 articles.

1. A mixed spectral finite-difference model for neutrally stratified boundary-layer flow over roughness changes and topography

2. Numerical calculation of turbulent flow around two-dimensional hills

3. Bitsuamlak G.T. Stathopoulos T. and Bedard C. (2002). “Neural network predictions of wind flow over complex terrain .” 4th Structural Specialty Conf. of the Canadian Society for Civil Engineering Montréal S-13.

4. Bowen A.J. (1979). “Full scale measurements of the atmospheric turbulence over two escarpments.” Proc. 5th Int. Conf. on Wind Eng. Pergamon Tarrytown N.Y. 161–172.

5. A wind-tunnel investigation of the wind speed and turbulence characteristics close to the ground over various escarpment shapes

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